CN210087186U - Window convenient for rain shielding and ventilation - Google Patents
Window convenient for rain shielding and ventilation Download PDFInfo
- Publication number
- CN210087186U CN210087186U CN201920180887.5U CN201920180887U CN210087186U CN 210087186 U CN210087186 U CN 210087186U CN 201920180887 U CN201920180887 U CN 201920180887U CN 210087186 U CN210087186 U CN 210087186U
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- window frame
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Abstract
The utility model discloses a window convenient for rain shielding and ventilation, which relates to the technical field of windows and aims to solve the technical problem that a sunshade can not be automatically adjusted to adapt to outdoor weather when people are not indoors, and the technical scheme is characterized in that the window comprises a window frame embedded in a wall and a window arranged in the window frame, and further comprises a ceiling rotatably arranged at the top of the window frame, the ceiling extends towards one side outdoors, the window frame is respectively provided with a driving component and a jacking component, and the window frame is provided with a raindrop sensor component; in rainy days, after the raindrop sensor assembly senses rainwater, the driving assembly is controlled to rotate the ceiling to close the ceiling, so that rainwater is reduced from falling into a room; after the rainwater stopped, the subassembly was moved in raindrop sensor subassembly control top promotes the ceiling and removes, recycles drive assembly drive ceiling and opens to can conveniently let sunshine penetrate into indoorly, also can ventilate indoorly, with this can adapt to different weather conditions, make things convenient for the customer to use.
Description
Technical Field
The utility model relates to a window technical field, more specifically say, it relates to a window convenient to keep off rain and ventilate.
Background
In modern buildings, glass is increasingly used from wall surfaces to roofs, the permeability of the glass enables people to fully feel natural landscapes, natural light and natural space, but the glass brings hidden troubles of energy consumption improvement in heating and refrigeration, and the traditional energy-saving technology, namely building sunshade, can prevent harmful direct sunlight and reduce the quantity of solar radiation heat transmitted into rooms, and is one of effective measures for eliminating and preventing indoor overheating in summer. In hot summer areas, the sun shading has obvious effects of reducing building energy consumption, enabling equipment such as an air conditioner and the like to consume energy as little as possible, realizing the environment that a room is warm in winter and cool in summer, and improving the indoor living comfort.
Chinese patent with publication number CN205422351U discloses a novel window rain shed, including the big rain shed of window top, still include the little rain shed of window slide rail top 5cm department, both ends about the vice frame of window are fixed at little rain shed both ends, little rain shed comprises main weather shield and side weather shield, and main weather shield is the rectangle, is 15 with the decurrent contained angle of vertical direction, and side weather shield is 0 with the decurrent contained angle of vertical direction, around the left side of main weather shield, preceding, the right a week.
When the ceiling in the prior art is used, in a rainy weather stage, if people suddenly encounter wind and rain when the window is not closed outside, rainwater can easily flow into the room to wet the room; if people close the ceiling before going out, the ceiling cannot be opened in time in sunny days, the sunlight enters the room, the indoor moisture is reduced, and the use is inconvenient and needs to be improved.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims to provide a window convenient to keep off rain and ventilate.
The above object of the present invention can be achieved by the following technical solutions:
the utility model provides a window convenient to keep off rain and ventilate, is including inlaying the window frame in the wall and setting up the window in the window frame, still including rotating the ceiling that sets up at window frame top, the ceiling extends to outdoor one side, be equipped with the top that is used for driving the drive assembly that the ceiling opened and shut and promotes the outside removal of ceiling on the window frame respectively and move the subassembly, be equipped with on the window frame and be used for controlling the drive assembly and rotate the ceiling and push the raindrop sensor module that the subassembly promoted the ceiling motion.
By adopting the technical scheme, in rainy days, after the raindrop sensor assembly senses rainwater, the driving assembly is controlled to rotate the ceiling to close the ceiling, so that the rainwater is reduced from falling into a room; after the rainwater stopped, the subassembly was moved in raindrop sensor subassembly control top promotes the ceiling and removes, recycles drive assembly drive ceiling and opens to can conveniently let sunshine penetrate into indoorly, also can ventilate indoorly, with this can adapt to different weather conditions, make things convenient for the customer to use.
Further, the raindrop sensor assembly comprises a raindrop sensor arranged on the outer side wall of the ceiling and a controller arranged on the window frame;
the drive assembly is including setting up the frame on window frame roof, be equipped with first motor in the frame, the drive shaft of first motor is connected with the axis of rotation, the length direction setting of window frame is followed to the axis of rotation, around being equipped with the rope on the lateral wall of axis of rotation, the one end that the axis of rotation was kept away from to the rope is connected with the lateral wall of ceiling, the bottom of window frame is equipped with the first travel switch of the first motor stall of control, raindrop sensor, first travel switch and first motor all are connected with the controller electricity.
Through adopting above-mentioned technical scheme, when in rainwater weather, the rainwater is inducted to the raindrop sensor, gives the controller with signal transmission, and the controller gives first motor with signal transmission, and first motor drive axis of rotation rotates, puts down the rope, and after the first travel switch of ceiling touching, first motor stall, the ceiling can be closed to this can be favorable to reducing the rainwater and get into indoorly.
Furthermore, a positioning groove is formed in one side, away from the first motor, of the window frame, and an elastic button is arranged on the groove side wall of the positioning groove;
one side of the ceiling, which is far away from the rotating shaft, is provided with a buckle plate inserted into the positioning groove, and the side wall of the buckle plate is provided with a fixing groove for inserting the elastic button.
Through adopting above-mentioned technical scheme, when the ceiling closed, the buckle inserts in the constant head tank, utilizes the inertia that the ceiling falls, inserts in the constant head tank when the buckle to this can fix the ceiling on the window frame, reduces wind and lifts the ceiling, and then reduces the rainwater and gets into indoor possibility.
Furthermore, a magnet which is magnetically attracted with the pinch plate is arranged on the bottom wall of the positioning groove.
Through adopting above-mentioned technical scheme, in the buckle inserted the constant head tank, utilize magnet and buckle to attract mutually, the elasticity button of being convenient for inserts the fixed slot smoothly in, is favorable to strengthening the stability of buckle in the constant head tank, and then strengthens the stability of ceiling on the window frame.
Furthermore, a limit groove is arranged on the groove wall of the positioning groove; the elastic button comprises a spring arranged on the bottom wall of the limiting groove, and a protruding block inserted into the fixing groove is arranged on one side, away from the bottom wall of the limiting groove, of the spring.
Through adopting above-mentioned technical scheme, in the buckle inserted the constant head tank, through the inertia that falls of ceiling, the buckle extrudees the lug, and the spring shrink when the fixed slot removes to the lug below, in the lug was gone into the fixed slot by the spring bullet to this can be smoothly fix the buckle in the constant head tank.
Furthermore, a movable slide rail is arranged on the side wall of the positioning groove;
the ejection assembly comprises a second motor and a transmission shaft connected with a driving shaft of the second motor, a rack for ejecting the pinch plate is arranged in the movable slide rail, and the rack is meshed with the gear;
a second travel switch for controlling the reverse rotation of the first motor and the reverse rotation of the second motor is arranged on the side wall of the positioning groove, an ejector block in contact with the second travel switch is arranged on the side wall of the rack, and the second motor and the second travel switch are both electrically connected with the controller;
and a connecting rod is arranged on one side of the rack close to the ceiling, a third stroke switch for controlling the first motor and the second motor to stop reversely is arranged on one side of the connecting rod close to the ceiling, and the third stroke switch is electrically connected with the controller.
By adopting the technical scheme, in sunny days, after the raindrop sensor cannot sense rainwater, the signal is transmitted to the second motor, the second motor drives the transmission shaft and the gear to rotate, then the rack is driven to rotate, the pinch plate is ejected out of the positioning groove through the rack, the contact block is contacted with the second travel switch in the rack movement, the signal is transmitted to the controller, the controller transmits the signal to the first motor and the second motor, the first motor drives the rotating shaft to rotate reversely, the rope is wound up, the ceiling can be driven to rotate, the second motor rotates reversely, the rack moves into the positioning groove to reset, when the ceiling rotates to touch the third travel switch, the third travel switch transmits the signal to the first motor and the second motor, the first motor and the second motor stop rotating, the ceiling can be unfolded, so that sunlight can be shot into the room, and indoor moisture is reduced, indoor ventilation may also be enhanced.
Furthermore, two baffles which are respectively contacted with the side wall of the ceiling are oppositely arranged on the side wall of the window frame.
Through adopting above-mentioned technical scheme, when the ceiling closed, the lateral wall contact of two baffles and ceiling further reduces the rainwater and gets into indoorly.
Furthermore, an inclined surface is arranged on one side, far away from the window, of the ceiling, and the thickness of the ceiling decreases progressively from one side, close to the window frame, to one side, far away from the window frame.
By adopting the technical scheme, after the ceiling is closed, rainwater falls on the inclined plane, so that the rainwater can conveniently slide off the ceiling.
To sum up, the utility model discloses following beneficial effect has:
1. the raindrop sensor assembly is used for controlling the driving assembly to drive the ceiling to close, so that rainwater is reduced from entering a room, the raindrop sensor assembly controls the jacking assembly to drive the ceiling to expand, sunlight can conveniently enter the room, indoor humidity is reduced, and ventilation can be performed;
2. the elastic button is matched with the fixing groove of the buckle plate in a concave-convex mode, so that the stability of the ceiling combined on the window frame is enhanced, the possibility that the ceiling is lifted by wind is reduced, and rainwater is prevented from entering a room;
3. utilize the bracing piece to support the slider and slide in the spout, be favorable to strengthening ceiling pivoted stability.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment.
Fig. 2 is a schematic structural diagram of a driving assembly in an embodiment.
FIG. 3 is a cross-sectional view of a detent in an embodiment.
Fig. 4 is an enlarged view of a portion a in fig. 3.
Fig. 5 is a schematic structural diagram of a jacking assembly in an embodiment.
Fig. 6 is a schematic structural diagram of a third stroke switch in an embodiment.
In the figure: 1. a window frame; 10. positioning a groove; 11. an elastic button; 12. a magnet; 13. a limiting groove; 14. a spring; 15. a bump; 16. moving the slide rail; 17. a second travel switch; 18. a baffle plate; 19. an inclined surface; 2. a window; 3. a ceiling; 30. buckling the plate; 31. fixing grooves; 34. a third travel switch; 35. a contact block; 36. a support; 4. a drive assembly; 40. a frame; 41. a first motor; 42. a rotating shaft; 43. a rope; 44. a first travel switch; 45. a connecting rod; 5. a jacking assembly; 50. a second motor; 51. a drive shaft; 52. a gear; 53. a rack; 54. a top block; 6. a raindrop sensor assembly; 60. a raindrop sensor; 61. a controller; 7. a gap; 8. and (4) mounting the groove.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b):
referring to fig. 1 and 2, a window convenient for rain shielding and ventilation comprises a window frame 1 embedded in a wall, a window 2 arranged in the window frame 1, and a ceiling 3 rotatably arranged at the top of the window frame 1, wherein the ceiling 3 extends towards the outdoor side, an inclined surface 19 is arranged at one side of the ceiling 3 far away from the window 2, and the thickness of the ceiling 3 is gradually reduced from one side close to the window frame 1 to one side far away from the window frame 1; two baffles 18 which are respectively contacted with the side wall of the ceiling 3 are oppositely arranged on the side wall of the window frame 1, and the baffles 18 are arranged along the height direction of the window frame 1;
referring to fig. 1 and 2, a driving assembly 4 for driving a ceiling 3 to open and close and a pushing assembly 5 for pushing the ceiling 3 to move outwards are respectively arranged on a window frame 1, and a raindrop sensor assembly 6 for controlling the driving assembly 4 to rotate the ceiling 3 and the pushing assembly 5 to push the ceiling 3 to move is arranged on the window frame 1; when raining, the raindrop sensor assembly 6 senses raindrops, the driving assembly 4 is controlled to drive the ceiling 3 to rotate, the ceiling 3 is closed, and meanwhile the baffles 18 are blocked at two sides of the ceiling 3, so that rainwater is reduced from entering a room; when the rain stops, the rain sensor assembly 6 can not feel the rain, and then the control jacking assembly 5 pushes the ceiling 3 to rotate, so that the ceiling 3 is unfolded, sunlight enters the room, the indoor humidity is reduced, the ventilation is facilitated, and the rain sensor assembly can adapt to different weather conditions and is convenient for users to use.
Referring to fig. 3, the raindrop sensor assembly 6 includes a raindrop sensor 60 disposed on an outer side wall of the ceiling 3 and a controller 61 disposed on the window frame 1, and the controller 61 in this embodiment is a PLC;
referring to fig. 2, the driving assembly 4 includes a frame 40 disposed on the top wall of the window frame 1, a first motor 41 is disposed on the frame 40, a rotating shaft 42 is connected to a driving shaft of the first motor 41, the rotating shaft 42 is disposed along the length direction of the window frame 1, a rope 43, preferably 2 ropes 43, is wound around the side wall of the rotating shaft 42, a bracket 36 is disposed on the side wall of the ceiling 3, one end of the rope 43 away from the rotating shaft 42 is connected to the bracket 36, a first travel switch 44 for controlling the first motor 41 to stop rotating is disposed on one side of the window frame 1 away from the first motor 41, and the raindrop sensor 60, the first travel switch 44 and the first motor 41 are electrically connected to a controller 61 (see fig. 3);
referring to fig. 4, a positioning groove 10 is formed on a side of the window frame 1 away from the first motor 41 (refer to fig. 2), and an elastic button 11 is arranged on a groove side wall of the positioning groove 10; a limiting groove 13 is arranged on the groove wall of the positioning groove 10; the elastic button 11 comprises a spring 14 arranged on the bottom wall of the limiting groove 13, a convex block 15 is arranged on one side of the spring 14 away from the bottom wall of the limiting groove 13, and one side of the convex block 15 away from the spring 14 is in a hemispherical shape;
referring to fig. 3 and 4, a buckle plate 30 inserted into the positioning groove 10 is arranged on one side of the ceiling 3 away from the rotating shaft 42, and a fixing groove 31 for inserting the convex block 15 is arranged on the side wall of the buckle plate 30; a magnet 12 which is magnetically attracted with the buckle plate 30 is arranged on the bottom wall of the positioning groove 10, and a gap 7 is reserved between the magnet 12 and the buckle plate 30; after raindrop sensor 60 senses raindrop, give controller 61 with signal transmission, controller 61 gives first motor 41 (refer to fig. 2) starting signal transmission, first motor 41 starts, drive axis of rotation 42 and rotate, loosen rope 43, ceiling 3 closes, after ceiling 3 touches first travel switch 44 (refer to fig. 2), first travel switch 44 gives controller 61 with signal transmission, controller 61 gives first motor 41 with closing signal transmission, ceiling 3 can close, it is indoor to reduce the rainwater entering, buckle 30 inserts in constant head tank 10, lug 15 inserts in fixed slot 31, and simultaneously, magnet 12 attracts buckle 30 mutually, strengthen the stability of buckle 30 in constant head tank 10, it lifts ceiling 3 to reduce wind, be favorable to further reducing the rainwater entering indoor.
Referring to fig. 5, a movable slide rail 16 is arranged on the side wall of the positioning groove 10, and the movable slide rail 16 is T-shaped; the jacking component 5 comprises a second motor 50 and a transmission shaft 51 connected with a driving shaft of the second motor 50, a mounting groove 8 for mounting the second motor 50 is arranged in the window frame 1, one end of the transmission shaft 51, which is far away from the second motor 50, extends into the positioning groove 10 and is connected with a gear 52, a rack 53 for ejecting the pinch plate 30 (refer to fig. 4) is arranged in the movable slide rail 16, the rack 53 is meshed with the gear 52, and the rack 53 is arranged along the width direction of the window frame 1;
referring to fig. 5, a second travel switch 17 for controlling the first motor 41 and the second motor 50 to rotate reversely is disposed on the side wall of the positioning slot 10, a top block 54 contacting with the second travel switch 17 is disposed on the side wall of the rack 53, and both the second motor 50 and the second travel switch 17 are electrically connected to a controller 61 (refer to fig. 3);
referring to fig. 5 and 6, a connecting rod 45 is arranged on one side of the frame 40 close to the ceiling 3, a third travel switch 34 for controlling the first motor 41 and the second motor 50 to stop reversely is arranged on one side of the connecting rod 45 close to the ceiling 3, and the third travel switch 34 is electrically connected with a controller 61 (refer to fig. 3); when the raindrop sensor 60 does not sense raindrops, a signal is transmitted to the controller 61, the controller 61 transmits the signal to the second motor 50, the second motor 50 drives the transmission shaft 51 and the gear 52 to rotate, then the rack 53 is driven to rotate, the buckle plate 30 is ejected out of the positioning groove 10 through the rack 53, at the moment, the contact block 35 is in contact with the third travel switch 34 and transmits the signal to the controller 61, the controller 61 respectively transmits the signal to the first motor 41 and the second motor 50, the first motor 41 drives the rotating shaft 42 to rotate reversely, the rope 43 is wound up, and the ceiling 3 is driven to be unfolded; the second motor 50 rotates reversely, the rack 53 is moved in the positioning groove 10 to reset, when the ceiling 3 is unfolded to touch the third travel switch 34, the third travel switch 34 transmits a signal to the first motor 41 and the second motor 50, the first motor 41 and the second motor 50 stop rotating, the ceiling 3 can be unfolded, the rack 53 can reset, sunlight can be favorably emitted into a room, indoor moisture is reduced, and indoor ventilation can be enhanced.
The implementation principle of the above embodiment is as follows: in rainy days, after the raindrop sensor assembly 6 senses raindrops, the driving assembly 4 is controlled to drive the ceiling 3 to close, so that raindrops can be reduced from entering the room; when the rain stops, the raindrop sensor assembly 6 does not sense the raindrop, the control jacking assembly 5 drives the ceiling 3 to be opened, the sunlight is enabled to enter the room, ventilation is conducted, and indoor moisture is reduced.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.
Claims (8)
1. The utility model provides a window convenient to keep off rain and ventilate, includes to inlay window frame (1) in the wall and set up window (2) in window frame (1), its characterized in that: still including rotating ceiling (3) that sets up at window frame (1) top, ceiling (3) extend to outdoor one side, be equipped with drive assembly (4) that are used for driving ceiling (3) to open and shut and promote the top that ceiling (3) outwards removed and move subassembly (5) on window frame (1) respectively, be equipped with on window frame (1) and be used for controlling drive assembly (4) and rotate ceiling (3) and push up raindrop sensor assembly (6) that move subassembly (5) and promote ceiling (3) motion.
2. A window for facilitating rain ventilation according to claim 1, wherein: the raindrop sensor assembly (6) comprises a raindrop sensor (60) arranged on the outer side wall of the ceiling (3) and a controller (61) arranged on the window frame (1);
drive assembly (4) are including setting up frame (40) on window frame (1) roof, be equipped with first motor (41) on frame (40), the drive shaft of first motor (41) is connected with axis of rotation (42), the length direction setting of window frame (1) is followed in axis of rotation (42), around being equipped with rope (43) on the lateral wall of axis of rotation (42), the one end that axis of rotation (42) was kept away from in rope (43) is connected with the lateral wall of ceiling (3), the bottom of window frame (1) is equipped with first travel switch (44) of control first motor (41) stall, raindrop sensor (60), first travel switch (44) and first motor (41) all are connected with controller (61) electricity.
3. A window for facilitating rain ventilation according to claim 2, wherein: a positioning groove (10) is formed in one side, away from the first motor (41), of the window frame (1), and an elastic button (11) is arranged on the groove side wall of the positioning groove (10);
one side of the ceiling (3) far away from the rotating shaft (42) is provided with a buckle plate (30) inserted into the positioning groove (10), and the side wall of the buckle plate (30) is provided with a fixing groove (31) for inserting the elastic button (11).
4. A window for facilitating rain ventilation according to claim 3, wherein: and a magnet (12) which is magnetically attracted with the buckle plate (30) is arranged on the bottom wall of the positioning groove (10).
5. The window of claim 4 that facilitates rain ventilation, wherein: a limiting groove (13) is arranged on the groove wall of the positioning groove (10); the elastic button (11) comprises a spring (14) arranged on the bottom wall of the limiting groove (13), and a convex block (15) inserted into the fixing groove (31) is arranged on one side, away from the bottom wall of the limiting groove (13), of the spring (14).
6. A window for facilitating rain ventilation according to claim 3, wherein: a movable slide rail (16) is arranged on the side wall of the positioning groove (10);
the ejection assembly (5) comprises a second motor (50) and a transmission shaft (51) connected with a driving shaft of the second motor (50), a rack (53) for ejecting the pinch plate (30) is arranged in the movable slide rail (16), and the rack (53) is meshed with a gear (52);
a second travel switch (17) used for controlling the first motor (41) to rotate reversely and the second motor (50) to rotate reversely is arranged on the side wall of the positioning groove (10), a top block (54) in contact with the second travel switch (17) is arranged on the side wall of the rack (53), and the second motor (50) and the second travel switch (17) are both electrically connected with the controller (61);
a connecting rod (45) is arranged on one side, close to the ceiling (3), of the rack (40), a third travel switch (34) for controlling the first motor (41) and the second motor (50) to stop reversely is arranged on one side, close to the ceiling (3), of the connecting rod (45), and the third travel switch (34) is electrically connected with the controller (61).
7. A window for facilitating rain ventilation according to claim 1, wherein: two baffles (18) which are respectively contacted with the side wall of the ceiling (3) are oppositely arranged on the side wall of the window frame (1).
8. A window for facilitating rain ventilation according to claim 7, wherein: an inclined surface (19) is arranged on one side, away from the window (2), of the ceiling (3), and the thickness of the ceiling (3) decreases progressively from one side close to the window frame (1) to one side away from the window frame (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920180887.5U CN210087186U (en) | 2019-01-31 | 2019-01-31 | Window convenient for rain shielding and ventilation |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920180887.5U CN210087186U (en) | 2019-01-31 | 2019-01-31 | Window convenient for rain shielding and ventilation |
Publications (1)
Publication Number | Publication Date |
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CN210087186U true CN210087186U (en) | 2020-02-18 |
Family
ID=69470574
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920180887.5U Expired - Fee Related CN210087186U (en) | 2019-01-31 | 2019-01-31 | Window convenient for rain shielding and ventilation |
Country Status (1)
Country | Link |
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CN (1) | CN210087186U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112761499A (en) * | 2021-01-22 | 2021-05-07 | 南京武家嘴门窗装饰有限公司 | Intelligent door and window with automatic sound insulation and noise reduction functions |
WO2021196567A1 (en) * | 2020-03-30 | 2021-10-07 | 南京九起建筑科技有限公司 | Apparatus and method for determining weather conditions on the basis of sensor |
-
2019
- 2019-01-31 CN CN201920180887.5U patent/CN210087186U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2021196567A1 (en) * | 2020-03-30 | 2021-10-07 | 南京九起建筑科技有限公司 | Apparatus and method for determining weather conditions on the basis of sensor |
CN112761499A (en) * | 2021-01-22 | 2021-05-07 | 南京武家嘴门窗装饰有限公司 | Intelligent door and window with automatic sound insulation and noise reduction functions |
CN112761499B (en) * | 2021-01-22 | 2022-04-26 | 南京武家嘴门窗装饰有限公司 | Intelligent door and window with automatic sound insulation and noise reduction functions |
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Legal Events
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200218 Termination date: 20220131 |
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CF01 | Termination of patent right due to non-payment of annual fee |